4.6 Article

Structural Basis for Oxygen Activation at a Heterodinuclear Manganese/Iron Cofactor

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 290, 期 42, 页码 25254-25272

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M115.675223

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资金

  1. Swedish Research Council and European Union FP7 Project GlycoHit
  2. Swedish Foundation for Strategic Research
  3. Jane and Dan Olsson Foundations
  4. Deutsche Forschungsgemeinschaft Grant [Ha3265/6-1]
  5. Heisenberg Fellowship
  6. Deutsches Bundesministerium fur Bildung und Forschung within Rontgen-Angstrom Cluster [05K14KE1]
  7. Swedish Research Council
  8. Knut and Alice Wallenberg Foundation
  9. European Community's Seventh Framework Programme [283570]

向作者/读者索取更多资源

Two recently discovered groups of prokaryotic di-metal carboxylate proteins harbor a heterodinuclear Mn/Fe cofactor. These are the class Ic ribonucleotide reductase R2 proteins and a group of oxidases that are found predominantly in pathogens and extremophiles, called R2-like ligand-binding oxidases (R2lox). We have recently shown that the Mn/Fe cofactor of R2lox self-assembles from Mn-II and Fe-II in vitro and catalyzes formation of a tyrosine-valine ether cross-link in the protein scaffold (Griese, J. J., Roos, K., Cox, N., Shafaat, H. S., Branca, R.M., Lehtio , J., Graslund, A., Lubitz, W., Siegbahn, P. E., and Hogbom, M. (2013) Proc. Natl. Acad. Sci. U.S.A. 110, 1718917194). Here, we present a detailed structural analysis of R2lox in the nonactivated, reduced, and oxidized resting Mn/Fe- and Fe/Fe-bound states, as well as the nonactivated Mn/Mn-bound state. X-ray crystallography and x-ray absorption spectroscopy demonstrate that the active site ligand configuration of R2lox is essentially the same regardless of cofactor composition. Both the Mn/Fe and the diiron cofactor activate oxygen and catalyze formation of the ether cross-link, whereas the dimanganese cluster does not. The structures delineate likely routes for gated oxygen and substrate access to the active site that are controlled by the redox state of the cofactor. These results suggest that oxygen activation proceeds via similar mechanisms at the Mn/Fe and Fe/Fe center and that R2lox proteins might utilize either cofactor in vivo based on metal availability.

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